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Sorption studies and characterization of developed biochar composites for As(III) adsorption from water

机译:发达的生物炭复合材料的吸附研究和表征(III)从水中吸附

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Arsenic in groundwater is a serious problem.This paper investigates the role of biochar derived from agricultural waste byproducts to remediate arsenic from water.Composites were synthesized by thermal and chemical modifications in biomass.The biochar composites were characterized for their BET surface area and porosity.XPS,SEM,TEM,XRD,FT-IR,PPMS,ICP-MS were studied to analyze their magnetic moment,surface chemistry,mineralogy,crystallinity,elemental composition and functional group identification.Batch sorption studies,sorption equilibrium and kinetic studies were conducted using various mathematical equations and isotherm models to find sorption efficiency.As(III) removal occurred in pH 7.5-9.0.High adsorption capacities were reported for rice husk and wheat husk composites.Therefore,it can be considered to replace commercial adsorbents.Plausible mechanism and chemistry of As(III) adsorption was thus established.
机译:地下水中的砷是一个严重的问题。本文调查了生物炭衍生自农业废物副产物的作用,以通过生物质的热和化学改性合成来自Water.Cec的砷。生物炭复合材料的表征是它们的BET表面积和孔隙率。研究了XPS,SEM,TEM,XRD,FT-IR,PPMS,ICP-MS分析它们的磁矩,表面化学,矿物学,结晶度,元素组成和官能团鉴定。进行吸附研究,吸附平衡和动力学研究使用各种数学方程和等温模型来寻找吸附效率。(iii)在pH 7.5-9.0中发生去除。为稻壳和小麦壳复合材料报告了高吸附能力。因此,可以考虑更换商业吸附剂。可信定机制因此建立了(III)吸附的化学和化学。

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